The goal of this work is to investigate the usefulness of the optical tweezers for biological sample micro-manipulation.We report multiple optical trapping and manipulation of Escherichia coli cells, immersed in growth medium, by means of diffractive optical elements (DOE). The DOEs are implemented on a spatial light modulator to generate movable geometries of traps.We report also an experiment that allows to mimic the mechanical environment of cells in tissues. Micro-meter sized beads are trapped in circular geometry in order to surround living cells. By dynamically varying the geometry of the configuration and the trapping forces, we can reproduce a controlled environment where only mechanical stimuli are present and biological responses ...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
International audienceOptical tweezers have received significant attention in the past few decades a...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
Laser tweezers, often known as optical tweezers or optical traps, permit the capturing and micromani...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
International audienceOptical tweezers have received significant attention in the past few decades a...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
The main aim of this project was to develop novel concepts for miniaturization of bioanalytical tech...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
Optical tweezers has enabled application and measurement of forces in a highly quantitative way and ...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
We will demonstrate how optical tweezers can be combined with a microfluidic system to create a vers...
Laser tweezers, often known as optical tweezers or optical traps, permit the capturing and micromani...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...
International audienceOptical tweezers have received significant attention in the past few decades a...
Optical tweezers allow for noninvasive manipulation of subcellular compartments to study their physi...